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旋转皮肤拉伸的本体感觉反馈研究及其在肌电系统中的应用。

Investigation of rotational skin stretch for proprioceptive feedback with application to myoelectric systems.

机构信息

Mechanical Engineering Department, Stanford University, Stanford, CA 94305, USA.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2010 Feb;18(1):58-66. doi: 10.1109/TNSRE.2009.2039602. Epub 2010 Jan 12.

Abstract

We present a new wearable haptic device that provides a sense of position and motion by inducing rotational skin stretch on the user's skin. In the experiments described in this paper, the device was used to provide proprioceptive feedback from a virtual prosthetic arm controlled with myoelectric sensors on the bicep and tricep muscles in 15 able-bodied participants. Targeting errors in blind movements with the haptic device were compared to cases where no feedback and contralateral proprioception were provided. Average errors were lower with the device than with no feedback but larger than with contralateral proprioceptive feedback. Participants also had lower visual demand with the device than with no feedback while tracking a 30 ( degrees ) moving range. The results indicate that the rotational skin stretch may ultimately be effective for proprioceptive feedback in myoelectric prostheses, particularly when vision is otherwise occupied.

摘要

我们提出了一种新的可穿戴触觉设备,通过在用户的皮肤上产生旋转的皮肤拉伸来提供位置和运动感。在本文描述的实验中,该设备用于为通过肱二头肌和肱三头肌上的肌电传感器控制的虚拟假肢提供本体感觉反馈,共有 15 名健全参与者参与。使用触觉设备进行盲动的目标误差与没有反馈和对侧本体感觉的情况进行了比较。与没有反馈的情况相比,使用设备时的平均误差较低,但比提供对侧本体感觉反馈时的误差大。参与者在跟踪 30 度的移动范围时,使用设备比没有反馈时的视觉需求更低。结果表明,旋转皮肤拉伸最终可能对肌电假肢的本体感觉反馈有效,特别是在视觉受到其他干扰时。

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